activity
20242026
collaborators

6 papers

cond-mat.soft2026

Active flows drive anchoring of nematics at rigid walls

Michael Fang, Ioannis Hadjifrangiskou, Sumesh P. Thampi +2

Although confinement strongly influences flows in active materials, it remains unclear how active particles align at rigid boundaries when no thermodynamic anchoring is imposed. We…

cond-mat.soft2025

Why Extensile and Contractile Tissues Could be Hard to Tell Apart

Jan Rozman, Sumesh P. Thampi, Julia M. Yeomans

Active nematic models explain the topological defects and flow patterns observed in epithelial tissues, but the nature of active stress-whether it is extensile or contractile, a ke…

cond-mat.soft2025

Junctional-Fluctuation-Mediated Fluidisation of Multi-Phase Field Epithelial Monolayers

James N. Graham, Jan Rozman

We analyse a multi-phase field model for an epithelial monolayer with pairwise adhesions between neighbouring cells following an Ornstein-Uhlenbeck process, representing the stocha…

cond-mat.soft2025

Spontaneous Hole Formation in Cell Monolayers Emerges from Collective Cell Motion

Diogo E. P. Pinto, Jan Rozman, Julia M. Yeomans

Although cell monolayers typically remain confluent, they can spontaneously develop persistent holes as a result of collective cellular motion. Recent studies on MDCK monolayers cu…

physics.bio-ph2025

Cell-level modelling of homeostasis in confined epithelial monolayers

KVS Chaithanya, Jan Rozman, Andrej Košmrlj +1

Tissue homeostasis, the biological process of maintaining a steady state in tissue via control of cell proliferation, death, and metabolic function, is essential for the developmen…

cond-mat.soft2024

Vertex model with internal dissipation enables sustained flows

Jan Rozman, Chaithanya K. V. S., Julia M. Yeomans +1

Complex tissue flows in epithelia are driven by intra- and inter-cellular processes that generate, maintain, and coordinate mechanical forces. There has been growing evidence that…